Search Results - "Nagata, Sanae"
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Neofunction of ACVR1 in fibrodysplasia ossificans progressiva
Published in Proceedings of the National Academy of Sciences - PNAS (15-12-2015)“…Fibrodysplasia ossificans progressiva (FOP) is a rare genetic disease characterized by extraskeletal bone formation through endochondral ossification. FOP…”
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Activin-A enhances mTOR signaling to promote aberrant chondrogenesis in fibrodysplasia ossificans progressiva
Published in The Journal of clinical investigation (01-09-2017)“…Fibrodysplasia ossificans progressiva (FOP) is a rare and intractable disease characterized by extraskeletal bone formation through endochondral ossification…”
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3
Derivation of mesenchymal stromal cells from pluripotent stem cells through a neural crest lineage using small molecule compounds with defined media
Published in PloS one (02-12-2014)“…Neural crest cells (NCCs) are an embryonic migratory cell population with the ability to differentiate into a wide variety of cell types that contribute to the…”
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4
New Protocol to Optimize iPS Cells for Genome Analysis of Fibrodysplasia Ossificans Progressiva
Published in Stem cells (Dayton, Ohio) (01-06-2015)“…Successful in vitro disease‐recapitulation using patient‐specific induced pluripotent stem cells (iPSCs) requires two fundamental technical issues: appropriate…”
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Prophylactic treatment of rapamycin ameliorates naturally developing and episode -induced heterotopic ossification in mice expressing human mutant ACVR1
Published in Orphanet journal of rare diseases (24-05-2020)“…Fibrodysplasia ossificans progressiva (FOP) is a rare autosomal-dominant disease characterized by heterotopic ossification (HO) in soft tissues and caused by a…”
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6
An mTOR Signaling Modulator Suppressed Heterotopic Ossification of Fibrodysplasia Ossificans Progressiva
Published in Stem cell reports (13-11-2018)“…Fibrodysplasia ossificans progressiva (FOP) is a rare and intractable disorder characterized by extraskeletal bone formation through endochondral ossification…”
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Mutant IDH1 Dysregulates the Differentiation of Mesenchymal Stem Cells in Association with Gene-Specific Histone Modifications to Cartilage- and Bone-Related Genes
Published in PloS one (10-07-2015)“…Somatic mutations in the isocitrate dehydrogenase (IDH)1/2 genes endow encoding proteins with neomorphic activity to produce the potential oncometabolite,…”
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3D osteogenic differentiation of human iPSCs reveals the role of TGFβ signal in the transition from progenitors to osteoblasts and osteoblasts to osteocytes
Published in Scientific reports (19-01-2023)“…Although the formation of bone-like nodules is regarded as the differentiation process from stem cells to osteogenic cells, including osteoblasts and…”
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SS18-SSX, the Oncogenic Fusion Protein in Synovial Sarcoma, Is a Cellular Context-Dependent Epigenetic Modifier
Published in PloS one (16-11-2015)“…The prevalence and specificity of unique fusion oncogenes are high in a number of soft tissue sarcomas (STSs). The close relationship between fusion genes and…”
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10
Recapitulation of pro-inflammatory signature of monocytes with ACVR1A mutation using FOP patient-derived iPSCs
Published in Orphanet journal of rare diseases (21-09-2022)“…Background Fibrodysplasia ossificans progressiva (FOP) is a rare genetic disease characterized by progressive heterotopic ossification (HO) in soft tissues due…”
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11
Differentiation of Hypertrophic Chondrocytes from Human iPSCs for the In Vitro Modeling of Chondrodysplasias
Published in Stem cell reports (09-03-2021)“…Chondrodysplasias are hereditary diseases caused by mutations in the components of growth cartilage. Although the unfolded protein response (UPR) has been…”
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In vitro bone-like nodules generated from patient-derived iPSCs recapitulate pathological bone phenotypes
Published in Nature biomedical engineering (01-07-2019)“…The recapitulation of bone formation via the in vitro generation of bone-like nodules is frequently used to understand bone development. However, current…”
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Collagen X Is Dispensable for Hypertrophic Differentiation and Endochondral Ossification of Human iPSC‐Derived Chondrocytes
Published in JBMR plus (01-05-2023)“…ABSTRACT Collagen X is a non‐fibril collagen produced by hypertrophic chondrocytes and was believed to associate with the calcification process of growth plate…”
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In vitro bone-like nodules generated from patient-derived iPSCs recapitulate pathological bone phenotypes
Published in Nature biomedical engineering (01-07-2019)Get full text
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15
Modeling human somite development and fibrodysplasia ossificans progressiva with induced pluripotent stem cells
Published in Development (Cambridge) (23-08-2018)“…Somites (SMs) comprise a transient stem cell population that gives rise to multiple cell types, including dermatome (D), myotome (MYO), sclerotome (SCL) and…”
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Automated cell culture system for the production of cell aggregates with growth plate-like structure from induced pluripotent stem cells
Published in SLAS technology (01-12-2023)“…Programmable liquid handling devices for cell culture systems have dramatically enhanced scalability and reproducibility. We previously reported a protocol to…”
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A de novo dominant-negative variant is associated with OTULIN-related autoinflammatory syndrome
Published in The Journal of experimental medicine (03-06-2024)“…OTULIN-related autoinflammatory syndrome (ORAS), a severe autoinflammatory disease, is caused by biallelic pathogenic variants of OTULIN, a linear…”
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Oxidative phosphorylation is a pivotal therapeutic target of fibrodysplasia ossificans progressiva
Published in Life science alliance (01-05-2024)“…Heterotopic ossification (HO) is a non-physiological bone formation where soft tissue progenitor cells differentiate into chondrogenic cells. In fibrodysplasia…”
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SS18-SSX, the Oncogenic Fusion Protein in Synovial Sarcoma, Is a Cellular Context-Dependent Epigenetic Modifier: e0142991
Published in PloS one (01-11-2015)“…The prevalence and specificity of unique fusion oncogenes are high in a number of soft tissue sarcomas (STSs). The close relationship between fusion genes and…”
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Journal Article -
20
Mutant IDH1 Dysregulates the Differentiation of Mesenchymal Stem Cells in Association with Gene-Specific Histone Modifications to Cartilage- and Bone-Related Genes: e0131998
Published in PloS one (01-07-2015)“…Somatic mutations in the isocitrate dehydrogenase (IDH)1/2 genes endow encoding proteins with neomorphic activity to produce the potential oncometabolite,…”
Get full text
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